食品科学 ›› 2023, Vol. 44 ›› Issue (20): 175-182.doi: 10.7506/spkx1002-6630-20230212-105

• 生物工程 • 上一篇    下一篇

棘孢木霉天冬氨酸蛋白酶基因的克隆表达及其对大豆分离蛋白的水解

周迪,邱小娴,柯野,胡秋怡   

  1. (韶关学院英东生物与农业学院,广东 韶关 512005)
  • 出版日期:2023-10-25 发布日期:2023-11-07
  • 基金资助:
    广东省科技创新战略专项资金项目(广东省自然科学基金)(2018A0303130108); 韶关学院自然科学类科研项目(SZ2020KJ06);广东大学生科技创新培育专项资金资助项目(pdjh2023b0474); 韶关学院2022年度校级“质量工程”建设项目(课程教研27)

Cloning and Expression of an Aspartic Protease Gene from Trichoderma asperellum and Its Application to the Hydrolysis of Soy Protein Isolate

ZHOU Di, QIU Xiaoxian, KE Ye, HU Qiuyi   

  1. (Henry Fok School of Biology and Agriculture, Shaoguan University, Shaoguan 512005, China)
  • Online:2023-10-25 Published:2023-11-07

摘要: 为开发木霉天冬氨酸蛋白酶的应用潜能,采用实时聚合酶链式反应技术,从棘孢木霉(Trichoderma asperellum)中克隆蛋白酶基因asp,并在毕赤酵母(Pichia pastoris)GS115中成功表达,进一步对重组蛋白酶rAsp进行分离纯化,分析其生化特性及对大豆分离蛋白的水解作用。结果显示,asp基因编码的蛋白酶属于天冬氨酸蛋白酶家族,其序列与本家族成员序列相似性最高为47.74%。在三角瓶中诱导表达时,发酵液中rAsp的酶活力为25.8 U/mL。rAsp最适反应pH值和温度分别为2.5和45 ℃,在pH 2.0~6.0范围和45 ℃以下具有较强的稳定性。Cu2+和Mn2+具有促进rAsp活性的作用,而Fe3+、十二烷基硫酸钠和胃蛋白酶抑制剂显著抑制rAsp的活性。rAsp对大豆分离蛋白的水解效率较商业化胃蛋白酶高7.7%;同时,降低β-伴大豆球蛋白和球蛋白致敏性的能力分别是胃蛋白酶的1.4 倍和1.8 倍。因此,rAsp在大豆蛋白加工应用中具有潜在的开发价值。

关键词: 棘孢木霉;重组天冬氨酸蛋白酶;生化特性;大豆分离蛋白;致敏性

Abstract: In order to explore the application potential of aspartic protease (Asp) of Trichoderma sp., the protease gene (asp) was cloned from Trichoderma asperellum by real-time polymerase chain reaction, and was successfully expressed in Pichia Pastoris GS115. The recombinant protease (rAsp) was isolated and purified, and its biochemical properties and its effectiveness in hydrolyzing soy protein isolate (SPI) were studied. The results showed that the protease encoded by the asp gene belonged to the aspartic protease family, and its sequence identity with other members of this family was up to 47.74%. The protease activity of rAsp in the fermentation broth obtained by induced expression in a conical flask was 25.8 U/mL. The optimal reaction pH and temperature of rAsp were 2.5 and 45 ℃, respectively, and rAsp had strong stability in the pH range of 2.0–6.0 and below 45 ℃. The activity of rAsp was promoted by Cu2+ and Mn2+ but inhibited by Fe3+, sodium dodecylsulfate (SDS) and pepstantin. The hydrolysis efficiency of SPI with rAsp was 7.7% higher than that with commercial pepsin. Moreover, the ability of rAsp to reduce the allergenicity of β-conglycinin and glycinin was 1.4 and 1.8 times greater than that of the pepsin, respectively. Therefore, rAsp has potential application in soy protein processing.

Key words: Trichoderma asperellum; recombinant aspartic protease; biochemical properties; soy protein isolate; allergenicity

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